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加利福尼亚湾一座浅海山鱼类群落结构的季节性变化。

Seasonal changes in fish assemblage structure at a shallow seamount in the Gulf of California.

作者信息

Jorgensen Salvador J, Klimley A Peter, Muhlia-Melo Arturo, Morgan Steven G

机构信息

Conservation Research Department, Monterey Bay Aquarium, Monterey, California, United States; Department of Wildlife, Fish, & Conservation Biology, University of California, Davis, California, United States.

Department of Wildlife, Fish, & Conservation Biology, University of California , Davis, California , United States.

出版信息

PeerJ. 2016 Sep 6;4:e2357. doi: 10.7717/peerj.2357. eCollection 2016.

Abstract

Seamounts have generally been identified as locations that can promote elevated productivity, biomass and predator biodiversity. These properties attract seamount-associated fisheries where elevated harvests can be obtained relative to surrounding areas. There exists large variation in the geological and oceanographic environment among the thousands of locations that fall within the broad definition of seamount. Global seamount surveys have revealed that not all seamounts are hotspots of biodiversity, and there remains a strong need to understand the mechanisms that underlie variation in species richness observed. We examined the process of fish species assembly at El Bajo Espiritu Santo (EBES) seamount in the Gulf of California over a five-year study period. To effectively quantify the relative abundance of fast-moving and schooling fishes in a 'blue water' habitat, we developed a simplified underwater visual census (UVC) methodology and analysis framework suitable for this setting and applicable to future studies in similar environments. We found correlations between seasonally changing community structure and variability in oceanographic conditions. Individual species responses to thermal habitat at EBES revealed three distinct assemblages, a 'fall assemblage' tracking warmer overall temperature, a 'spring assemblage' correlated with cooler temperature, and a 'year-round assemblage' with no significant response to temperature. Species richness was greatest in spring, when cool and warm water masses stratified the water column and a greater number of species from all three assemblages co-occurred. We discuss our findings in the context of potential mechanisms that could account for predator biodiversity at shallow seamounts.

摘要

海山通常被认为是能够促进生产力、生物量和捕食者生物多样性提升的区域。这些特性吸引了与海山相关的渔业,相较于周边区域,这里能获得更高的渔获量。在海山这一宽泛定义范围内的数千个地点中,地质和海洋环境存在很大差异。全球海山调查显示,并非所有海山都是生物多样性热点,仍然迫切需要了解观察到的物种丰富度变化背后的机制。我们在加利福尼亚湾的圣埃斯皮里图下(EBES)海山进行了为期五年的研究,考察了鱼类物种聚集的过程。为了有效量化“蓝色水域”栖息地中快速游动和集群鱼类的相对丰度,我们开发了一种简化的水下视觉普查(UVC)方法和分析框架,适用于这种环境,并可应用于未来类似环境的研究。我们发现季节性变化的群落结构与海洋学条件的变化之间存在相关性。EBES海山的单个物种对热栖息地的反应揭示了三种不同的组合,一种“秋季组合”追踪总体温度较高的情况,一种“春季组合”与较低温度相关,还有一种“全年组合”对温度无显著反应。春季物种丰富度最高,此时冷水团和暖水团使水柱分层,来自所有三种组合的更多物种同时出现。我们在可能解释浅海山捕食者生物多样性的潜在机制的背景下讨论了我们的发现。

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